Forschungzentrum Dresden-Rossendorf, Institute for Radiation Physics, 01328 Dresden, Germany.
Phys Rev Lett. 2010 Feb 26;104(8):084802. doi: 10.1103/PhysRevLett.104.084802. Epub 2010 Feb 25.
Laser-plasma wakefield-based electron accelerators are expected to deliver ultrashort electron bunches with unprecedented peak currents. However, their actual pulse duration has never been directly measured in a single-shot experiment. We present measurements of the ultrashort duration of such electron bunches by means of THz time-domain interferometry. With data obtained using a 0.5 J, 45 fs, 800 nm laser and a ZnTe-based electro-optical setup, we demonstrate the duration of laser-accelerated, quasimonoenergetic electron bunches [best fit of 32 fs (FWHM) with a 90% upper confidence level of 38 fs] to be shorter than the drive laser pulse, but similar to the plasma period.
基于激光等离子体尾流的电子加速器有望提供具有空前峰值电流的超短电子束。然而,它们的实际脉冲持续时间在单次实验中从未被直接测量过。我们通过太赫兹时域干涉测量法对这种电子束的超短持续时间进行了测量。使用 0.5 J、45 fs、800nm 激光和基于 ZnTe 的电光装置获得的数据,我们证明了激光加速的准单能电子束的持续时间[最佳拟合为 32 fs(FWHM),90%置信水平上限为 38 fs]短于驱动激光脉冲,但与等离子体周期相似。